首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Semi-empirical model for site effects on acceleration time histories at soft-soil sites. Part 1: Formulation and development
【24h】

Semi-empirical model for site effects on acceleration time histories at soft-soil sites. Part 1: Formulation and development

机译:场地对软土场地加速时间历史的影响的半经验模型。第1部分:配方与开发

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A criterion is developed for the simulation of realistic artificial ground motion histories at soft-soil sites, corresponding to a detailed ground motion record at a reference firm-ground site. A complex transfer function is defined as the Fourier transform of the ground acceleration time history at the soft-soil site divided by the Fourier transform of the acceleration record at the firm-ground site. Working with both the real and the imaginary components of the transfer function, and not only with its modulus, serves to keep the statistical information about the wave phases (and, therefore, about the time variation of amplitudes and frequencies) in the algorithm used to generate the artificial records. Samples of these transfer functions, associated with a given pair of soft-soil and firm-ground sites, are empirically determined from the corresponding pairs of simultaneous records. Each function included in a sample is represented as the superposition of the transfer functions of the responses of a number of oscillators. This formulation is intended to account for the contributions of trains of waves following different patterns in the vicinity of both sites. The properties of the oscillators play the role of parameters of the transfer functions. They vary from one seismic event to another. Part of the variation is systematic, and can be explained in terms of the influence of ground motion intensity on the effective values of stiffness and damping of the artificial oscillators. Another part has random nature; it reflects the random characteristics of the wave propagation patterns associated with the different events. The semi-empirical model proposed recognizes both types of variation. The influence of intensity is estimated by means of a conventional one-dimensional shear wave propagation model. This model is used to derive an intensity-dependent modification of the values of the empirically determined model parameters in those cases when the firm-ground earthquake intensity used to determine these parameters differs from that corresponding to the seismic event for which the simulated records are to be obtained.
机译:制定了一个标准,用于模拟软土现场的真实人工地面运动历史,该标准对应于参考实地地面的详细地面运动记录。复数传递函数定义为软土站点上地面加速度时间历史的傅立叶变换除以实地站点上加速度记录的傅立叶变换。处理传递函数的实部和虚部,不仅使用其模数,还用于在以下算法中保留有关波相位(以及振幅和频率随时间变化)的统计信息:生成人工记录。从相应的同时记录对中凭经验确定与给定的一对软土和坚硬的地面站点关联的这些传递函数的样本。样本中包含的每个函数都表示为多个振荡器响应的传递函数的叠加。这种表述意在解释两个地点附近的波列遵循不同模式的贡献。振荡器的特性起传递函数参数的作用。它们从一个地震事件到另一个地震事件都不同。部分变化是系统性的,可以用地面运动强度对人工振荡器刚度和阻尼有效值的影响来解释。另一部分具有随机性。它反映了与不同事件相关的波传播模式的随机特征。提出的半经验模型可以识别两种类型的变化。借助于传统的一维剪切波传播模型来估计强度的影响。当用于确定这些参数的实地地震强度不同于模拟记录所针对的地震事件所对应的实地地震强度时,该模型用于推导根据经验确定的模型参数值的强度依赖的修改。获得。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号